首页> 外文期刊>Applied Organometallic Chemistry >Electrospinning preparation of NiO/ZnO composite nanofibers for photodegradation of binary mixture of rhodamine B and methylene blue in aqueous solution: Central composite optimization
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Electrospinning preparation of NiO/ZnO composite nanofibers for photodegradation of binary mixture of rhodamine B and methylene blue in aqueous solution: Central composite optimization

机译:NiO / ZnO复合纳米纤维的静电纺丝制备,用于光降解罗丹明B和水溶液中亚甲基蓝色的光降解:中央复合材料优化

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摘要

One-dimensional nanofiber of p-type NiO/n-type ZnO heterojunctions with various molar ratios of Ni to Zn at different calcination temperatures were successfully synthesized using the electrospinning method, and they were fully characterized. The photocatalysts thus obtained were applied in aqueous solutions for rhodamine B (RDB) and methylene blue (MB) degradation. The p-n heterojunctions built among the cubic structure NiO and hexagonal structure ZnO in the composite nanofiber are responsible for generation of electrons and holes and subsequently superoxide and hydroxyl radical production by carriers which lead to degradation of the dyes in solution. The composite nanofibers (ZnNi1) calcined at 550 degrees C for 3h showed the highest photocatalytic activity for degradation of the dyes in aqueous solution. The optimum values were found to be 180min, 7.0, 1gl(-1) and 3.0 and 3.0mgl(-1) for irradiation time, pH, photocatalyst dosage and initial concentration of RDB and MB, respectively. For these optimum conditions, the photocatalytic degradation of RDB and MB was found to be 99.37 and 98.44%, respectively. The maximum photodegradation of RDB and MB using ZnNi1 was 59.41 and 65.43%, respectively. First-order kinetics based on the Langmuir-Hinshelwood model successfully fitted the experimental data.
机译:使用静电纺丝法成功地合成了在不同煅烧温度下的具有各种摩尔比对于不同煅烧温度的Ni至Zn的p型NiO / n型ZnO异质结的一维纳米纤维。将由此获得的光催化剂应用于罗丹明B(RDB)和亚甲基蓝(MB)降解的水溶液中。复合纳米纤维中的立方结构NIO和六边形结构ZnO中构建的P-N异质局负责产生电子和孔和随后通过载体产生的超氧化物和羟基自由基产生,这导致溶液中染料的降解。在550℃下煅烧的复合纳米纤维(ZnNi1)3H显示出最高的光催化活性,用于在水溶液中降解染料的染料。发现最佳值是180min,7.0,1gl(-1)和3.0和3.0mg1(-1),用于照射时间,pH,光催化剂剂量和RDB和MB的初始浓度。对于这些最佳条件,发现RDB和MB的光催化降解分别为99.37和98.44%。使用ZnNI1的RDB和MB的最大光降解分别为59.41和65.43%。基于Langmuir-Hinshelwood模型的一阶动力学成功安装了实验数据。

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